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首页> 外文期刊>ACS Synthetic Biology >GreA and GreB Enhance Expression of Escherichia coil RNA Polymerase Promoters in a Reconstituted Transcription-Translation System
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GreA and GreB Enhance Expression of Escherichia coil RNA Polymerase Promoters in a Reconstituted Transcription-Translation System

机译:GreA和GreB增强了重组转录翻译系统中大肠杆菌RNA聚合酶启动子的表达。

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摘要

Cell-free environments are becoming viable alternatives for implementing biological networks in synthetic biology. The reconstituted cell-free expression system (PURE) allows characterization of genetic networks under defined conditions but its applicability to native bacterial promoters and endogenous genetic networks is limited due to the poor transcription rate of Escherichia coli RNA polymerase in this minimal system. We found that addition of transcription elongation factors GreA and GreB to the PURE system increased transcription rates of E. coli RNA polymerase from sigma factor 70 promoters up to 6-fold and enhanced the performance of a genetic network. Furthermore, we reconstituted activation of natural E. coli promoters controlling flagella biosynthesis by the transcriptional activator FlhDC and sigma factor 28. Addition of GreA/GreB to the PURE system allows efficient expression from natural and synthetic E. coli promoters and characterization of their regulation in minimal and defined reaction conditions, making the PURE system more broadly applicable to study genetic networks and bottom-up synthetic biology.
机译:无细胞环境正在成为在合成生物学中实施生物网络的可行替代方案。重组的无细胞表达系统(PURE)可以在定义的条件下表征遗传网络,但由于在此最小系统中大肠杆菌RNA聚合酶的转录速度较差,因此其对天然细菌启动子和内源遗传网络的适用性受到限制。我们发现向PURE系统中添加转录延伸因子GreA和GreB可以使大肠杆菌RNA聚合酶从sigma因子70启动子的转录速率增加多达6倍,并增强了遗传网络的性能。此外,我们通过转录激活因子FlhDC和Sigma因子28重建了控制鞭毛生物合成的天然大肠杆菌启动子的激活。向PURE系统添加GreA / GreB可从天然和合成大肠杆菌启动子中高效表达,并表征它们在大肠杆菌中的调控作用最小和明确的反应条件,使PURE系统更广泛地应用于研究遗传网络和自下而上的合成生物学。

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